CIRCUIT · PIEZOELECTRIC ENERGY HARVESTING

Piezoelectric Energy Harvesting Circuit Diagrams & Examples

Piezoelectric energy harvesting circuits convert mechanical stress—like footsteps, vibrations, or pressure—into usable electrical energy. This collection shows practical circuit diagrams for common piezoelectric harvesting scenarios, including footstep generators, vibration harvesters, and power management with dedicated ICs.

4 EXAMPLES· UPDATED 2026-08-13
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ABOUT

About these examples.

Whether you're designing a self-powered sensor, a wearable device, or an educational project, these examples illustrate rectification, energy storage, and voltage regulation stages. Use them as a starting point, then customize your own circuit with the diagram maker.

HOW TO

Make one yourself.

  1. 1

    Define your energy source

    Specify the piezoelectric element (e.g., PZT disc, PVDF film) and the mechanical input type (footstep, vibration, pressure) to set the expected AC voltage and frequency.

  2. 2

    Choose the rectification stage

    Add a full-wave bridge rectifier using low forward-voltage diodes to convert the AC output of the piezoelectric element to DC for storage.

  3. 3

    Add energy storage

    Place a capacitor or rechargeable battery after the rectifier to store harvested energy. Select capacitance based on load requirements and pulse frequency.

  4. 4

    Integrate power management

    Include a dedicated energy harvesting IC (e.g., LTC3588) or a DC-DC converter to regulate output voltage for your specific load, such as an LED or sensor.

  5. 5

    Draw and annotate the circuit

    Use the circuit diagram tool to place symbols, connect components, label values, and add notes. Validate the schematic and share it as needed.

FAQ

Frequently asked questions

What is a piezoelectric energy harvesting circuit?01
It's an electronic circuit that captures the AC voltage generated by a piezoelectric material under mechanical stress and converts it into a stable DC output for powering small devices or charging storage elements.
Which diodes are best for the rectifier in a piezoelectric harvester?02
Schottky diodes are commonly used because of their low forward voltage drop, which improves efficiency when the piezoelectric output voltage is low. For very low voltages, active rectification with MOSFETs may be considered.
Can a piezoelectric energy harvesting circuit charge a battery?03
Yes, with proper power management. The circuit should include a rectifier, a storage capacitor, and a charge controller or regulator that matches the battery chemistry and prevents overcharging.
What is the LTC3588 and why is it used?04
The LTC3588 is a dedicated energy harvesting power management IC designed for piezoelectric transducers. It integrates a low-loss full-wave bridge rectifier and a high-efficiency buck converter, making it a compact solution for regulating harvested energy.
How can I increase the output voltage from a piezoelectric harvester?05
You can use a voltage doubler or multiplier circuit after the rectifier, or employ a boost converter. The choice depends on the expected input voltage and the required output for your load.
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